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Reliability evaluation of distribution transformers considering the negative and positive effects of rooftop photovoltaics

机译:分配变压器的可靠性评估考虑屋顶光伏的负面效应

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Rooftop photovoltaics (RPVs) have an impact on the ageing failure rate and reliability of transformers. The advantages and disadvantages of different penetrations of rooftop photovoltaic on the reliability of the transformers are studied. For the first time, the adverse effects of high penetration of RPVs on the transformer failure and power system reliability are examined. Regarding the growing interest in the widespread use of renewable energies on account of global warming, studying the negative effects of DG units presence is so important to predict the future of power system conditions. Monte Carlo simulation is used for the probabilistic nature of clearness index and reliability evaluation. Well-being criteria that show the different operation modes of the power system is used to identify the at-risk, marginal and healthy mode of the power system in the presence of different penetrations of rooftop photovoltaic. The results show that the maximum penetration of rooftop photovoltaic for improving the reliability of the power system is 5 kW per house in the feeder of Isin in Bandar Abbas, in Iran.
机译:屋顶光伏(RPV)对变压器的老化失效率和可靠性产生影响。研究了屋顶光伏对变压器可靠性的不同渗透的优点和缺点。首次,研究了RPV对变压器故障和电力系统可靠性的高渗透的不利影响。关于对全球变暖的广泛使用可再生能源的兴趣越来越多,研究了DG单位存在的负面影响对于预测电力系统条件的未来是如此重要。 Monte Carlo仿真用于清晰度指数和可靠性评估的概率性质。显示电力系统的不同操作模式的良好标准用于识别在屋顶光伏的不同渗透的存在下电力系统的风险,边缘和健康模式。结果表明,在伊朗,Isin的喂食器中,屋顶光伏用于提高电力系统可靠性的最大渗透为5千瓦。

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